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过渡态单体和寡聚体羧基酯酶与胆碱酯酶的动力学及结构关系。

Kinetic and structural relationships of transition monomeric and oligomeric carboxyl- and choline-esterases.

作者信息

Main A R

出版信息

J Environ Sci Health B. 1983;18(1):29-63. doi: 10.1080/03601238309372357.

Abstract

The kinetic and structural relationships of eight electrophoretically pure mammalian serum and liver serine carboxylesterases (CE) and cholinesterases (ChE) have been studied. Eight CE's and ChE's, which were fully resolved but only partially purified, provided additional information. Five of the electrophoretically pure esterases were monomeric, and of these, four belonged to a new and widely distributed class. These four monomeric esterases hydrolyzed choline esters, but at widely differing rates. Thus two were termed monomeric butyrylcholinesterases, mBuChE I and II, and two were monomeric CE's (mCE). The rabbit liver mCE was not a subunit of the oligomeric CE (oCE), although the oCE also hydrolyzed choline esters at a very low rate. The complex kinetics of the mCE's, mBuChE's, oCE's, and of the oligomeric BuChE's of horse and human serum could be interpreted according to a single reaction scheme involving an allosteric site and the equation derived from it. Thus activation and inhibition at high substrate concentrations, together with sigmoidal activity versus substrate concentration plots, all of which characterize the reactions of these esterases, could be interpreted by a single scheme and equation. Structural and kinetic comparisons showed a progressive transition of properties from the oCE's through the mCE's to the oBuChE's. One of the purified mCE's was from horse serum, and it exhibited physical and kinetic properties unlike those of the liver mCE's or oCE's.

摘要

已对8种经电泳纯的哺乳动物血清和肝脏丝氨酸羧基酯酶(CE)及胆碱酯酶(ChE)的动力学和结构关系进行了研究。8种CE和ChE虽已完全分离但仅部分纯化,提供了更多信息。5种经电泳纯的酯酶为单体,其中4种属于一个新的且分布广泛的类别。这4种单体酯酶水解胆碱酯,但速率差异很大。因此,两种被称为单体丁酰胆碱酯酶,即mBuChE I和II,另外两种为单体CE(mCE)。兔肝脏mCE不是寡聚CE(oCE)的亚基,尽管oCE也以非常低的速率水解胆碱酯。mCE、mBuChE、oCE以及马和人血清中的寡聚BuChE的复杂动力学可根据一个涉及别构位点及其推导方程的单一反应方案来解释。因此,高底物浓度下的激活和抑制,以及活性与底物浓度的S形曲线,所有这些表征这些酯酶反应的特征,都可以用一个单一方案和方程来解释。结构和动力学比较表明,性质从oCE通过mCE到oBuChE呈现渐进转变。其中一种纯化的mCE来自马血清,其物理和动力学性质与肝脏mCE或oCE不同。

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